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Geodesy for Planet Earth

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Table of Contents

  1. Altmetric Badge
    Book Overview
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    Chapter 1 Improved Analysis Strategy and Accessibility of the SIRGAS Reference Frame
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    Chapter 2 Improved GPS Data Analysis Strategy for Tide Gauge Benchmark Monitoring
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    Chapter 3 A Dense Global Velocity Field Based on GNSS Observations: Preliminary Results
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    Chapter 4 Enhancement of the EUREF Permanent Network Services and Products
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    Chapter 5 Can We Really Promise a mm-Accuracy for the Local Ties on a Geo-VLBI Antenna
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    Chapter 6 Recent Improvements in DORIS Data Processing at IGN in View of ITRF2008, the ignwd08 Solution
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    Chapter 7 Towards a Combination of Space-Geodetic Measurements
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    Chapter 8 Improving Length and Scale Traceability in Local Geodynamical Measurements
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    Chapter 9 How to Fix the Geodetic Datum for Reference Frames in Geosciences Applications?
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    Chapter 10 Transforming ITRF Coordinates to National ETRS89 Realization in the Presence of Postglacial Rebound: An Evaluation of the Nordic Geodynamical Model in Finland
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    Chapter 11 Global Terrestrial Reference Frame Realization Within the GGOS-D Project
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    Chapter 12 Comparison of Regional and Global GNSS Positions, Velocities and Residual Time Series
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    Chapter 13 GPS Metrology: Bringing Traceable Scale to a Local Crustal Deformation GPS Network
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    Chapter 14 Impact of Albedo Radiation on GPS Satellites
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    Chapter 15 On the Determination of Sea Level Changes by Combining Altimetric, Tide Gauge, Satellite Gravity and Atmospheric Observations
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    Chapter 16 Geodesy for Planet Earth
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    Chapter 17 The Impact of Attitude Control on GRACE Accelerometry and Orbits
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    Chapter 18 Using Atmospheric Uncertainties for GRACE De-aliasing: First Results
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    Chapter 19 Challenges in Deriving Trends from GRACE
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    Chapter 20 AIUB-GRACE02S: Status of GRACE Gravity Field Recovery Using the Celestial Mechanics Approach
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    Chapter 21 Comparison of Regional and Global GRACE Gravity Field Models at High Latitudes
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    Chapter 22 A New Approach for Pure Kinematical and Reduced-Kinematical Determination of LEO Orbit Based on GNSS Observations
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    Chapter 23 Pure Geometrical Precise Orbit Determination of a LEO Based on GNSS Carrier Phase Observations
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    Chapter 24 On a Combined Use of Satellite and Terrestrial Data in Refined Studies on Earth Gravity Field: Boundary Problems and a Target Function
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    Chapter 25 Moho Estimation Using GOCE Data: A Numerical Simulation
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    Chapter 26 CHAMP, GRACE, GOCE Instruments and Beyond
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    Chapter 27 The Future of the Satellite Gravimetry After the GOCE Mission
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    Chapter 28 Future Satellite Gravity Field Missions: Feasibility Study of Post-Newtonian Method
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    Chapter 29 Local and Regional Comparisons of Gravity and Magnetic Fields
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    Chapter 30 Combination of Local Gravimetry and Magnetic Data to Locate Subsurface Anomalies Using a Matched Filter
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    Chapter 31 On the Use of UAVs for Strapdown Airborne Gravimetry
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    Chapter 32 Updating the Precise Gravity Network at the BIPM
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    Chapter 33 Precise Gravimetric Surveys with the Field Absolute Gravimeter A-10
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    Chapter 34 Reconstruction of a Torsion Balance and the Results of the Test Measurements
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    Chapter 35 The Superconducting Gravimeter as a Field Instrument Applied to Hydrology
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    Chapter 36 Local Hydrological Information in Gravity Time Series: Application and Reduction
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    Chapter 37 Signals of Mass Redistribution at the South African Gravimeter Site SAGOS
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    Chapter 38 Gravity System and Network in Estonia
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    Chapter 39 Evaluation of EGM2008 Within Geopotential Space from GPS, Tide Gauges and Altimetry
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    Chapter 40 Fixed Gravimetric BVP for the Vertical Datum Problem
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    Chapter 41 Realization of the World Height System in New Zealand: Preliminary Study
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    Chapter 42 Comparisons of Global Geopotential Models with Terrestrial Gravity Field Data Over Santiago del Estero Region, NW: Argentine
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    Chapter 43 Intermap’s Airborne Inertial Gravimetry System
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    Chapter 44 Galathea-3: A Global Marine Gravity Profile
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    Chapter 45 Dependency of Resolvable Gravitational Spatial Resolution on Space-Borne Observation Techniques
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    Chapter 46 A Comparison of Different Integral-Equation-Based Approaches for Local Gravity Field Modelling: Case Study for the Canadian Rocky Mountains
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    Chapter 47 Global Topographically Corrected and Topo-Density Contrast Stripped Gravity Field from EGM08 and CRUST 2.0
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    Chapter 48 Local Gravity Field Modelling in Rugged Terrain Using Spherical Radial Basis Functions: Case Study for the Canadian Rocky Mountains
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    Chapter 49 A Sensitivity Analysis in Spectral Gravity Field Modeling Using Systems Theory
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    Chapter 50 Investigation of Topographic Reductions for Marine Geoid Determination in the Presence of an Ultra-High Resolution Reference Geopotential Model
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    Chapter 51 Effects of Hypothetical Complex Mass-Density Distributions on Geoidal Height
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    Chapter 52 Evaluation of Gravity and Altimetry Data in Australian Coastal Regions
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    Chapter 53 Development and User Testing of a Python Interface to the GRAVSOFT Gravity Field Programs
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    Chapter 54 Progress and Prospects of the Antarctic Geoid Project (Commission Project 2.4)
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    Chapter 55 Regional Geoid Improvement over the Antarctic Peninsula Utilizing Airborne Gravity Data
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    Chapter 56 Auvergne Dataset: Testing Several Geoid Computation Methods
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    Chapter 57 In Pursuit of a cm-Accurate Local Geoid Model for Ohio
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    Chapter 58 Adjustment of Collocated GPS, Geoid and Orthometric Height Observations in Greece. Geoid or Orthometric Height Improvement?
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    Chapter 59 Regional Geophysical Excitation Functions of Polar Motion over Land Areas
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    Chapter 60 Geophysical Excitation of the Chandler Wobble Revisited
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    Chapter 61 On the Origin of the Bi-Decadal and the Semi-Secular Oscillations in the Length of the Day
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    Chapter 62 Future Improvements in EOP Prediction
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    Chapter 63 Determination of Nutation Coefficients from Lunar Laser Ranging
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    Chapter 64 A Set of Analytical Formulae to Model Deglaciation-Induced Polar Wander
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    Chapter 65 Stabilization of Satellite Derived Gravity Field Coefficients by Earth Orientation Parameters and Excitation Functions
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    Chapter 66 The Statistical Characteristics of Altimetric Sea Level Anomaly Time Series
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    Chapter 67 Testing Past Sea Level Reconstruction Methodology (1958–2006)
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    Chapter 68 Precise Determination of Relative Mean Sea Level Trends at Tide Gauges in the Adriatic
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    Chapter 69 Quantile Analysis of Relative Sea-Level at the Hornbæk and Gedser Tide Gauges
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    Chapter 70 Assessment of the FES2004 Derived OTL Model in the West of France and Preliminary Results About Impacts of Tropospheric Models
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    Chapter 71 Gravimetric Time Series Recording at the Argentine Antarctic Stations Belgrano II and San Martín for the Improvement of Ocean Tide Models
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    Chapter 72 Mass-Change Acceleration in Antarctica from GRACE Monthly Gravity Field Solutions
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    Chapter 73 Mass Variations in the Siberian Permafrost Region from GRACE
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    Chapter 74 Seasonal Variability of Land Water Storage in South America Using GRACE Data
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    Chapter 75 Water Storage Changes from GRACE Data in the La Plata Basin
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    Chapter 76 Second and Third Order Ionospheric Effects on GNSS Positioning: A Case Study in Brazil
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    Chapter 77 Advanced Techniques for Discontinuity Detection in GNSS Coordinate Time-Series. An Italian Case Study
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    Chapter 78 Traditional and Alternative Network Adjustment Approach for the TAMDEF GPS in Antarctica
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    Chapter 79 Impact of Loading Phenomena on Velocity Field Computation from GPS Campaigns: Application to ResPyr GPS Campaign in the Pyrenees
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    Chapter 80 Comparison of the Coordinates Solutions Between the Absolute and the Relative Phase Center Variation Models in the Dense Regional GPS Network in Japan
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    Chapter 81 The 2009 Horizontal Velocity Field for South America and the Caribbean
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    Chapter 82 New Estimates of Present-Day Crustal/Land Motions in the British Isles Based on the BIGF Network
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    Chapter 83 GURN (GNSS Upper Rhine Graben Network): Research Goals and First Results of a Transnational Geo-scientific Network
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    Chapter 84 Determination of Horizontal and Vertical Movements of the Adriatic Microplate on the Basis of GPS Measurements
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    Chapter 85 Determination of Tectonic Movements in the Swiss Alps Using GNSS and Levelling
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    Chapter 86 A Compilation of a Preliminary Map of Vertical Deformations in New Zealand from Continuous GPS Data
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    Chapter 87 Detection of Vertical Temporal Behaviour of IGS Stations in Canada Using Least Squares Spectral Analysis
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    Chapter 88 Positioning and Applications for Planet Earth
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    Chapter 89 Report of Sub-commission 4.2 “Applications of Geodesy in Engineering”
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    Chapter 90 A Fixed-σ Digital Representation of a Random Scalar Field
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    Chapter 91 The Impact of Adding SBAS Data on GPS Data Processing in Southeast of Brazil: Preliminary Result
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    Chapter 92 First Results of Relative Field Calibration of a GPS Antenna at BCAL/UFPR (Baseline Calibration Station for GNSS Antennas at UFPR/Brazil)
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    Chapter 93 Medium-Distance GPS Ambiguity Resolution with Controlled Failure Rate
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    Chapter 94 Toward a SIRGAS Service for Mapping the Ionosphere’s Electron Density Distribution
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    Chapter 95 Assisted Code Point Positioning at Sub-meter Accuracy Level with Ionospheric Corrections Estimated in a Local GNSS Permanent Network
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    Chapter 96 Semi-annual Anomaly and Annual Asymmetry on TOPEX TEC During a Full Solar Cycle
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    Chapter 97 Numerical Simulation and Prediction of Atmospheric Aerosol Extinction Using Singular Value Decomposition
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    Chapter 98 Impact of Atmospheric Delay Reduction Using KARAT on GPS/PPP Analysis
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    Chapter 99 Modelling Tropospheric Zenith Delays Using Regression Models Based on Surface Meteorology Data
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    Chapter 100 Calibration of Wet Tropospheric Delays in GPS Observation Using Raman Lidar Measurements
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    Chapter 101 Generation of Slant Tropospheric Delay Time Series Based on Turbulence Theory
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    Chapter 102 Fitting of NWM Ray-Traced Slant Factors to Closed-Form Tropospheric Mapping Functions
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    Chapter 103 Estimation of Integrated Water Vapour from GPS Observations Using Local Models in Hungary
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    Chapter 104 GNSS Remote Sensing in the Atmosphere, Oceans, Land and Hydrology
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    Chapter 105 Mean Sea Surface Model of the Caspian Sea Based on TOPEX/Poseidon and Jason-1 Satellite Altimetry Data
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    Chapter 106 Combination of the Weekly Solutions Delivered by the SIRGAS Processing Centres for the SIRGAS-CON Reference Frame
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    Chapter 107 Report on the SIRGAS-CON Combined Solution, by IBGE Analysis Center
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    Chapter 108 Processing Evaluation of SIRGAS-CON Network by IBGE Analysis Center
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    Chapter 109 ProGriD: The Transformation Package for the Adoption of SIRGAS2000 in Brazil
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    Chapter 110 The New Multi-year Position and Velocity Solution SIR09P01 of the IGS Regional Network Associate Analysis Centre (IGS RNAAC SIR)
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    Chapter 111 Analysis of the Crust Displacement in Amazon Basin
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    Chapter 112 The Progress of the Geoid Model for South America Under GRACE and EGM2008
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    Chapter 113 Combining High Resolution Global Geopotential and Terrain Models to Increase National and Regional Geoid Determinations, Maracaibo Lake and Venezuelan Andes Case Study
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    Chapter 114 Evaluation of a Few Interpolation Techniques of Gravity Values in the Border Region of Brazil and Argentina
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    Chapter 115 RBMC in Real Time via NTRIP and Its Benefits in RTK and DGPS Surveys
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    Chapter 116 Bootstrapping with Multi-frequency Mixed Code Carrier Linear Combinations and Partial Integer Decorrelation in the Presence of Biases
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    Chapter 117 Real Time Satellite Clocks in Precise Point Positioning
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    Chapter 118 Improving the GNSS Attitude Ambiguity Success Rate with the Multivariate Constrained LAMBDA Method
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    Chapter 119 An Intelligent Personal Navigator Integrating GNSS, RFID and INS
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    Chapter 120 Integration of Image-Based and Artificial Intelligence Algorithms: A Novel Approach to Personal Navigation
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    Chapter 121 Modernization and New Services of the Brazilian Active Control Network
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    Chapter 122 magicSBAS: A South-American SBAS Experiment with NTRIP Data
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    Chapter 123 Scientific Rationale and Development of the Global Geodetic Observing System
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    Chapter 124 GGOS Bureau for Standards and Conventions: Integrated Standards and Conventions for Geodesy
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    Chapter 125 VLBI2010: Next Generation VLBI System for Geodesy and Astrometry
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    Chapter 126 The New Vienna VLBI Software VieVS
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    Chapter 127 Estimating Horizontal Tropospheric Gradients in DORIS Data Processing: Preliminary Results
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    Chapter 128 The BIPM: International References for Earth Sciences
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    Chapter 129 Development of the GLONASS Ultra-Rapid Orbit Determination at Geodetic Observatory Pecný
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    Chapter 130 AGrav: An International Database for Absolute Gravity Measurements
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Title
Geodesy for Planet Earth
Published by
Springer Berlin Heidelberg, January 2012
DOI 10.1007/978-3-642-20338-1
ISBNs
978-3-64-220337-4, 978-3-64-220338-1, 978-3-66-250754-4
Authors

Steve Kenyon, Maria Christina Pacino, Urs Marti

Editors

Steve Kenyon, Maria Christina Pacino, Urs Marti

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The data shown below were collected from the profile of 1 X user who shared this research output. Click here to find out more about how the information was compiled.
Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 106 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 106 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 22 21%
Student > Ph. D. Student 19 18%
Student > Master 18 17%
Student > Bachelor 7 7%
Other 6 6%
Other 13 12%
Unknown 21 20%
Readers by discipline Count As %
Earth and Planetary Sciences 39 37%
Engineering 24 23%
Environmental Science 10 9%
Agricultural and Biological Sciences 3 3%
Physics and Astronomy 3 3%
Other 6 6%
Unknown 21 20%